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9498c1dd73
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9498c1dd73 |
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e654d7c1bb |
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71332264cf |
5 changed files with 140 additions and 66 deletions
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@ -4,7 +4,9 @@ import os
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import fnmatch
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import fnmatch
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from typing import Any, Optional
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from typing import Any, Optional
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from pathlib import Path
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from pathlib import Path
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import struct
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from ..pars.openQCD import ms1
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from ..pars.openQCD import qcd2
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def read_ms1_param(path: Path, project: str, file_in_project: str) -> dict[str, Any]:
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def read_ms1_param(path: Path, project: str, file_in_project: str) -> dict[str, Any]:
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@ -307,79 +309,6 @@ def extract_t1(path: Path, project: str, dir_in_project: str, param: dict[str, A
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return t1_dict
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return t1_dict
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def read_qcd2_par_file(fname: Path) -> dict[str, dict[str, Any]]:
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"""
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The subroutines written here have names according to the openQCD programs and functions that write out the data.
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Parameters
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----------
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fname: Path
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Location of the parameter file.
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Returns
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-------
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par_dict: dict
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Dictionary holding the parameters specified in the given file.
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"""
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def _qcd2_write_lat_parms() -> dict[str, Any]:
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"""
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Unpack the lattice parameters written by write_lat_parms.
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"""
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lat_pars = {}
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t = fp.read(16)
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lat_pars["N"] = list(struct.unpack('iiii', t)) # lattice extends
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t = fp.read(8)
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nk, isw = struct.unpack('ii', t) # number of kappas and isw parameter
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lat_pars["nk"] = nk
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lat_pars["isw"] = isw
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t = fp.read(8)
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lat_pars["beta"] = struct.unpack('d', t)[0] # beta
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t = fp.read(8)
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lat_pars["c0"] = struct.unpack('d', t)[0]
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t = fp.read(8)
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lat_pars["c1"] = struct.unpack('d', t)[0]
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t = fp.read(8)
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lat_pars["csw"] = struct.unpack('d', t)[0] # csw factor
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kappas = []
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m0s = []
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# read kappas
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for ik in range(nk):
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t = fp.read(8)
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kappas.append(struct.unpack('d', t)[0])
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t = fp.read(8)
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m0s.append(struct.unpack('d', t)[0])
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lat_pars["kappas"] = kappas
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lat_pars["m0s"] = m0s
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return lat_pars
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def _qcd2_write_bc_parms() -> dict[str, Any]:
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"""
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Unpack the boundary parameters written by write_bc_parms.
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"""
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bc_pars: dict[str, Any] = {}
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t = fp.read(4)
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bc_pars["type"] = struct.unpack('i', t)[0] # type of hte boundaries
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t = fp.read(104)
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bc_parms = struct.unpack('d'*13, t)
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bc_pars["cG"] = list(bc_parms[:2]) # boundary gauge field improvement
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bc_pars["cF"] = list(bc_parms[2:4]) # boundary fermion field improvement
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phi: list[list[float]] = [[], []]
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phi[0] = list(bc_parms[4:7])
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phi[1] = list(bc_parms[7:10])
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bc_pars["phi"] = phi
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bc_pars["theta"] = list(bc_parms[10:])
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return bc_pars
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with open(fname, "rb") as fp:
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lat_par_dict = _qcd2_write_lat_parms()
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bc_par_dict = _qcd2_write_bc_parms()
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fp.close()
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par_dict = {}
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par_dict["lat"] = lat_par_dict
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par_dict["bc"] = bc_par_dict
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return par_dict
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def load_qcd2_pars(path: Path, project: str, file_in_project: str) -> dict[str, Any]:
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def load_qcd2_pars(path: Path, project: str, file_in_project: str) -> dict[str, Any]:
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"""
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"""
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Thin wrapper around read_qcd2_par_file, getting the file before reading.
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Thin wrapper around read_qcd2_par_file, getting the file before reading.
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@ -401,4 +330,28 @@ def load_qcd2_pars(path: Path, project: str, file_in_project: str) -> dict[str,
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fname = path / "projects" / project / file_in_project
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fname = path / "projects" / project / file_in_project
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ds = os.path.join(path, "projects", project)
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ds = os.path.join(path, "projects", project)
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dl.get(fname, dataset=ds)
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dl.get(fname, dataset=ds)
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return read_qcd2_par_file(fname)
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return qcd2.read_qcd2_par_file(fname)
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def load_ms1_pars(path: Path, project: str, file_in_project: str) -> dict[str, Any]:
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"""
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Thin wrapper around read_qcd2_ms1_par_file, getting the file before reading.
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Parameters
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----------
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path: Path
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Path of the corrlib repository.
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project: str
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UUID of the project of the parameter-file.
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file_in_project: str
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The loaction of the file in the project directory.
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Returns
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-------
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par_dict: dict
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The dict with the parameters read from the .par-file.
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"""
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fname = path / "projects" / project / file_in_project
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ds = os.path.join(path, "projects", project)
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dl.get(fname, dataset=ds)
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return ms1.read_qcd2_ms1_par_file(fname)
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3
corrlib/pars/openQCD/__init__.py
Normal file
3
corrlib/pars/openQCD/__init__.py
Normal file
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@ -0,0 +1,3 @@
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from . import ms1 as ms1
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from . import qcd2 as qcd2
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59
corrlib/pars/openQCD/flags.py
Normal file
59
corrlib/pars/openQCD/flags.py
Normal file
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@ -0,0 +1,59 @@
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"""
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Reconstruct the outputs of flags.
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"""
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import struct
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from typing import Any, BinaryIO
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# lat_parms.c
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def lat_parms_write_lat_parms(fp: BinaryIO) -> dict[str, Any]:
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"""
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NOTE: This is a duplcation from qcd2.
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Unpack the lattice parameters written by write_lat_parms.
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"""
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lat_pars = {}
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t = fp.read(16)
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lat_pars["N"] = list(struct.unpack('iiii', t)) # lattice extends
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t = fp.read(8)
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nk, isw = struct.unpack('ii', t) # number of kappas and isw parameter
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lat_pars["nk"] = nk
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lat_pars["isw"] = isw
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t = fp.read(8)
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lat_pars["beta"] = struct.unpack('d', t)[0] # beta
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t = fp.read(8)
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lat_pars["c0"] = struct.unpack('d', t)[0]
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t = fp.read(8)
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lat_pars["c1"] = struct.unpack('d', t)[0]
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t = fp.read(8)
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lat_pars["csw"] = struct.unpack('d', t)[0] # csw factor
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kappas = []
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m0s = []
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# read kappas
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for ik in range(nk):
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t = fp.read(8)
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kappas.append(struct.unpack('d', t)[0])
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t = fp.read(8)
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m0s.append(struct.unpack('d', t)[0])
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lat_pars["kappas"] = kappas
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lat_pars["m0s"] = m0s
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return lat_pars
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def lat_parms_write_bc_parms(fp: BinaryIO) -> dict[str, Any]:
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"""
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NOTE: This is a duplcation from qcd2.
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Unpack the boundary parameters written by write_bc_parms.
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"""
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bc_pars: dict[str, Any] = {}
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t = fp.read(4)
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bc_pars["type"] = struct.unpack('i', t)[0] # type of hte boundaries
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t = fp.read(104)
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bc_parms = struct.unpack('d'*13, t)
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bc_pars["cG"] = list(bc_parms[:2]) # boundary gauge field improvement
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bc_pars["cF"] = list(bc_parms[2:4]) # boundary fermion field improvement
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phi: list[list[float]] = [[], []]
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phi[0] = list(bc_parms[4:7])
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phi[1] = list(bc_parms[7:10])
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bc_pars["phi"] = phi
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bc_pars["theta"] = list(bc_parms[10:])
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return bc_pars
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30
corrlib/pars/openQCD/ms1.py
Normal file
30
corrlib/pars/openQCD/ms1.py
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@ -0,0 +1,30 @@
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from . import flags
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from typing import Any
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from pathlib import Path
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def read_qcd2_ms1_par_file(fname: Path) -> dict[str, dict[str, Any]]:
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"""
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The subroutines written here have names according to the openQCD programs and functions that write out the data.
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Parameters
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----------
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fname: Path
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Location of the parameter file.
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Returns
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-------
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par_dict: dict
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Dictionary holding the parameters specified in the given file.
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"""
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with open(fname, "rb") as fp:
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lat_par_dict = flags.lat_parms_write_lat_parms(fp)
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bc_par_dict = flags.lat_parms_write_bc_parms(fp)
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fp.close()
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par_dict = {}
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par_dict["lat"] = lat_par_dict
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par_dict["bc"] = bc_par_dict
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return par_dict
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29
corrlib/pars/openQCD/qcd2.py
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29
corrlib/pars/openQCD/qcd2.py
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@ -0,0 +1,29 @@
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from . import flags
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from pathlib import Path
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from typing import Any
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def read_qcd2_par_file(fname: Path) -> dict[str, dict[str, Any]]:
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"""
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The subroutines written here have names according to the openQCD programs and functions that write out the data.
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Parameters
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----------
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fname: Path
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Location of the parameter file.
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Returns
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-------
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par_dict: dict
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Dictionary holding the parameters specified in the given file.
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"""
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with open(fname, "rb") as fp:
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lat_par_dict = flags.lat_parms_write_lat_parms(fp)
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bc_par_dict = flags.lat_parms_write_bc_parms(fp)
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fp.close()
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par_dict = {}
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par_dict["lat"] = lat_par_dict
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par_dict["bc"] = bc_par_dict
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return par_dict
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